便携式拉曼光谱系统在体内口腔黏膜的生化特征研究

3区 物理与天体物理 Q1 Materials Science Progress in Optics Pub Date : 2021-07-16 DOI:10.3390/OPT2030013
Marcelo Saito Nogueira, Victória Ribeiro, M. Pires, F. Peralta, L.F.C.S. Carvalho
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引用次数: 9

摘要

大多数口腔损伤是通过侵入性和耗时的组织病理学分析来诊断的。这种分析和传统的临床观察不能确定生物化学改变的组织易患恶性肿瘤,如果没有检测到微结构变化。考虑到这一点,健康个体正常组织的详细生化特征及其分化特征对于识别与早期组织恶性转化易感性相关的生物分子变化非常重要。拉曼光谱是一种无标记的方法,用于表征组织结构和特定成分。在这项研究中,我们使用拉曼光谱来表征健康个体体内口腔组织的生物化学。我们基于10名志愿者的4个口腔亚位点(颊、牙龈、嘴唇和舌头)的拉曼光谱相关的振动模式,以及主成分(PC)负荷来研究这4种口腔亚位点之间的差异。因此,我们确定了每种健康口腔亚位点的生化特征以及四种亚位点分化所对应的生化特征。此外,我们开发了巴西人群中个体口腔健康组织的光谱参考,用于未来使用实时、无创和无标签技术(如拉曼光谱)诊断早期病理状况。
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Biochemical Profiles of In Vivo Oral Mucosa by Using a Portable Raman Spectroscopy System
Most oral injuries are diagnosed by histopathological analysis of invasive and time-consuming biopsies. This analysis and conventional clinical observation cannot identify biochemically altered tissues predisposed to malignancy if no microstructural changes are detectable. With this in mind, detailed biochemical characterization of normal tissues and their differentiation features on healthy individuals is important in order to recognize biomolecular changes associated with early tissue predisposition to malignant transformation. Raman spectroscopy is a label-free method for characterization of tissue structure and specific composition. In this study, we used Raman spectroscopy to characterize the biochemistry of in vivo oral tissues of healthy individuals. We investigated this biochemistry based on the vibrational modes related to Raman spectra of four oral subsites (buccal, gingiva, lip and tongue) of ten volunteers as well as with principal component (PC) loadings for the difference between the four types of oral subsites. Therefore, we determined the biochemical characteristics of each type of healthy oral subsite and those corresponding to differentiation of the four types of subsites. In addition, we developed a spectral reference of oral healthy tissues of individuals in the Brazilian population for future diagnosis of early pathological conditions using real-time, noninvasive and label-free techniques such as Raman spectroscopy.
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来源期刊
Progress in Optics
Progress in Optics 物理-光学
CiteScore
4.50
自引率
0.00%
发文量
8
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